Document 0gDoaR8rzvrjVr9L4ZEGppRbM
556
CHAPTER 23
1955 Guide
in factory buildings. Tests' have shown that the heat emitted from a walltype radiator may be reduced from 5 to 10 percent if the radiator is placed near the ceiling with the bars horizontal and in an air temperature ex ceeding 70 F. When radiators are placed hear the ceiling, there is usually such a large difference in the temperature between the floor level and the ceiling that it, becomes difficult to heat the living zone of the rooms satis factorily. Dimensions and heat emission rates for wall radiators are given in Table 4.
Baseboard radiation consists of long, low units which are made to resemble conventional baseboards, and are installed along the outside walls of rooms in place of the usual wooden baseboard. Units are made either of hollow cast-iron panels (with, or without fins on the back) or of ferrous or nonferrous finned tubing installed behind a metal enclosure. They are pri marily used in hot water systems, but may also be used in two-pipe steam systems.
There are various kinds of baseboard radiation available,1 the radiant type and the convector type. Radiant baseboards have a substantial portion of the front face water backed, and do not depend upon an enclo-
Table 5. Heat Emission of Pipe Coils Placed Vertically on a Wall (Pipes Horizontal) Containing Steam at 215 F and Surrounded with Air at 70 F
Btu per linear foot of coil per hour (not linear feel of pipe)
Size oy Pip
\ In.
U In.
uin.
132 162 185
252 312 348
440 545 616
567 702 793
651 796 907
732 907 1020
812
1005
1135
sure for their heat output. Cast-iron radiant baseboards may be either (1) a full radiant, called Type R, or (2) a radiant convector, called Type RC. The Type RC unit, in addition to the radiant front face, has ex tended convection heating surface on the rear face to increase its output. The convector type of baseboards includes finned tube units with which enclosures are used. The front of the enclosure supplies radiant heat.
The basic advantage of the baseboard radiator or of the long low harrow radiator is that its normal placement is along the cold walls and under areas where the greatest heat loss occurs in a room. Other advmitages claimed for the baseboard radiator are: it is inconspicuous; it is cleaD in operation; it offers a minimum of interference with furniture p'&c?" ment, and, it distributes the heat near the floor. This last characteristic reduces the floor to ceiling temperature gradient to about 2 to 4 F deg, aj10 tends to produce uniform temperatures throughout the room. It also makes baseboard radiators especially adaptable to basementless homes,
where cold floors are prevalent.2 Heat loss calculations for baseboard heating systems are the same as
those used for otheT types of radiation. The procedure for designs? baseboard heating systems is given in I = B = R Installation Guide No. Ratings for baseboard radiation are expressed in Btu per linear too
Pipe coils are assemblies of standard pipe or tubing (1 in. to 2 in.) whi
Radiators and Convectors
557
are used as radiators. In older practice these coils were commonly used in factory buildings, but are not often found in this service today. When coils are used, the miter type assembly is preferable, as it readily permits expansion in the pipe.
The heat emission of pipe coils placed vertically on a wall, with the pipes horizontal,'is given in Table 5, which has been developed from available data and does not represent definite results of tests; For such coils the heat emission varies as the height of the coil. The heat emission of each pipe in ceiling coils, placed horizontally, is about 126 Btu, 156 Btu, and 175 Btu per linear foot of pipe, respectively, for 1-in., lj-in., and lj-in. coils.
CONVECTORS
Convectors are space heating devices composed of a casing with outlet grille, and an extended surface heating element of fin-tube or cast-iron fin surface. The casing usually contains a damper. The air enters the en closure near the floor line below the heating element, is heated in passing
dX Enclosure Damper
vOuttet grille
Removable grille
^ Damper--
|
Insulating board
Removable metal
is front Heating unit
__ Plaster or y wood front
Removable slotted
baseboard
Si
SECTION
Finished floorx Metal front
Inlet opening open or grilled
ELEVATION
Finished floor,.X. -
t
SECTION
Plaster front
Fig. 1. Typical Recessed Convector
wwih tfle element> and delivered to the room through the outlet grille
psikt- i.ne.ar
f enclosure. The room air movement thus
established accomplishes a reduction in floor to ceiling temperature dif-
renual, and tends to assure comfort in the living zone. A typical re
cessed convector is shonm in Fig. 1. Factory-assembled units comprised
6atmg e^ement. casing and outlet grille with damper, are widely used.
rules may be used over the air inlets.
heat CaS6S w^ere encl?sures are to be used but are not furnished by the auH tv, manufac^rer, 't is important that the proportions of the cabinet 0f,, grilles be so designed that they will not impair the performance
for th assembied convector. It is desirable that the enclosure or housing cann t convector fit as snugly as possible so that the air to be heated
TMt by-pass the heating element in passing through the enclosure.
a_D^s*''iron heating units may be concealed in a cabinet or enclosure for
roorrKanCe' suck cases a Sreater percentage of heat is conveyed to the TM by convection thereby resulting in a form of gravity convector.
e output of a convector, for any given length and depth, is a fimetion